[2] | 1 | Changes from JCTVC-A124 |
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| 2 | Contact: Woo-Jin Han, wjhan.han@samsung.com |
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| 3 | |
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| 4 | 1. Removed tools |
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| 5 | |
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| 6 | 1.1 MVAC (motion vector accuracy control) |
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| 7 | - Enables to limit the motion accuracy up to 1/2 accuracy in B-slices for complexity reductio |
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| 8 | - Not used in CfP submission |
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| 9 | - Command line option in A124: MVA |
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| 10 | 1.2 SHV (simultaneous H & V motion partition) |
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| 11 | - Enables to use motion partition composed of quarter and remaining regions |
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| 12 | - Not used in CfP submission |
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| 13 | - Command line option in A124: SHV |
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| 14 | 1.3 RNG (random noise generation) |
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| 15 | - Insert Gaussian noise into the reconstruction file to improve perceived quality in flat areas |
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| 16 | - Not used in CfP submission |
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| 17 | - Command line option in A124: RNG |
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| 18 | 1.4 LOT (logical transform) |
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| 19 | - Perform 5-3 wavelet + DCT if physical transform size is smaller than requested transform size |
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| 20 | - Used in CfP submission only for 128x128 block |
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| 21 | - Command line option in A124: LOT |
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| 22 | 1.5 CADR (contents-adaptive dynamic range) |
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| 23 | - Performance source scaling within bit-depth limit |
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| 24 | - Used in CfP submission |
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| 25 | - Command line option in A124: CAD |
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| 26 | 1.6 LCT (low-complexity transform) |
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| 27 | - Low-complexity version of large integer transform |
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| 28 | - Not used in CfP submission |
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| 29 | - Command line option in A124: LCT |
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| 30 | 1.7 EXC (extreme correction) & BDC (band correction) |
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| 31 | - In-loop post filters based on pixel statistics |
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| 32 | - Used in CfP submission |
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| 33 | - Command line option in A124: EXC |
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| 34 | 1.8 PTM (pattern matching intra) |
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| 35 | - Pixel-based pattern matching technique for intra prediction |
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| 36 | - Used in CfP submission |
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| 37 | - Command line option in A124: TMI |
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| 38 | 1.9 MPI (multi-parametric intra) |
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| 39 | - Multi-parametric post-processing of intra prediction |
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| 40 | - Used in CfP submission |
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| 41 | - Command line option in A124: MPI |
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| 42 | 1.A CCCP (color correlation based chroma prediction) |
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| 43 | - Chroma intra prediction based on luma reconstruction |
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| 44 | - Used in CfP submission |
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| 45 | - Command line option in A124: CCP |
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| 46 | 1.B ACS (adaptive coefficient scanning) |
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| 47 | - 3 scanning patterns are used selectively (zigzag, horiz, vert) |
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| 48 | - Used in CfP submission |
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| 49 | - Command line option in A124: ACS |
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| 50 | 1.C HAM (high accuracy motion) |
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| 51 | - 1/12th accuracy motion vector for luma and chroma |
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| 52 | - Used in CfP submission for both luma and chroma |
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| 53 | - Command line option in A124: HME, HAP, HAB |
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| 54 | 1.D HME: high accuracy motion estimation |
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| 55 | - HAP: HAM in P-slice |
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| 56 | - HAB: HAM in B-slice |
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| 57 | |
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| 58 | 2. Modified tools |
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| 59 | |
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| 60 | 2.1 DIF (DCT-based interpolation filter) |
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| 61 | - A124 uses 6-tap DIF for chroma |
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| 62 | - Replaced with AVC bi-linear (1/8th) since it uses HAM filters (1/12th), which are not included in TMuC. |
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| 63 | 2.2 GRF (generated reference frame) |
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| 64 | - Weighted, weight + offset, offset, affine, isotropic and perspective are supported |
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| 65 | - Not used in CfP submission |
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| 66 | - Command line option in A124: -v <character> |
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| 67 | - w: weighted, o: offset, r: refinement, a: affine, i: isotropic, p: perspective |
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| 68 | - Affine, isotropic and perspective are removed but weighted prediction is remained due to simulate AVC WP |
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| 69 | - To activate: ¡®-v w¡¯ in command line (scale+offset) or ¡®-v o¡¯ for offset-only |
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| 70 | 2.3 AMVP (advanced motion prediction) |
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| 71 | - A124 software supports three AMVP modes |
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| 72 | - AM_NONE : use first candidate only (similar to AVC), no signaling |
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| 73 | - AM_EXPL : use explicit signaling (used in CfP submission) |
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| 74 | - AM_IMPL : use implicit signaling based on template matching |
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| 75 | - TMuC only has both explicit signaling mode and non-AMVP method |
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| 76 | - AM_IMPL is removed since it is not included in TMuC |
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| 77 | - AM_NONE is maintained since it can be a place-holder for non-AMVP method |
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| 78 | 2.4 CIP (combined intra prediction) |
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| 79 | - CIPflag is now coded only for intra blocks (bug-fix) |
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| 80 | - A124 codes CIPflag even in inter blocks |
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| 81 | |
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| 82 | 3. Option changes |
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| 83 | |
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| 84 | 3.1 JMQ (JM QP) |
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| 85 | - JMQ = 1: use JM QP assignments, JMQ = 0: use JSVM QP assignments |
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| 86 | - Option is removed and JMQ is always on |
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| 87 | - Option fix: JML (JM Lambda) |
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| 88 | 3.2 JML = 1: use JM lambda strategy, JML = 0: use JSVM lambda strategy |
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| 89 | - Option is removed and JML is always on |
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| 90 | 3.3 Option fix: ADI |
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| 91 | - Option is removed and ADI is always turned on |
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| 92 | 3.4 Option fix: AMV (AMVP) |
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| 93 | - Option is removed and AMVP is always turned on |
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| 94 | 3.5 Option fix: DIF |
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| 95 | - Option is removed and DIF is always turned on |
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| 96 | 3.6 Option fix: AMP |
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| 97 | - Option is removed and AMP is always turned on |
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| 98 | 3.7 Option fix: CIP |
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| 99 | - Option is removed and CIP is always turned on |
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| 100 | 3.8 Option fix: ROT |
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| 101 | - Option is removed and ROT is always turned on |
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| 102 | - Note: set ROT_DICT = 1 to disable ROT |
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| 103 | 3.9 Option fix: ACC |
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| 104 | - Try coefficient clearing in inter modes |
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| 105 | - Option is removed and ACC is always turned on |
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| 106 | 3.A Profile option (-p) |
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| 107 | - It was used to separate A124 and A125 coding tools |
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| 108 | - Removed, now |
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| 109 | |
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| 110 | 4. Misc. changes |
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| 111 | |
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| 112 | 4.1 MAX value of IBDI is fixed (IBDI_NOCLIP_RANGE MACRO) |
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| 113 | - Only allows possible values of bit-depth increased signal, not all possible values of inherent high bit-depth case |
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| 114 | 4.2 Encoder output is fixed |
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| 115 | - Slice size bit (32) is now added to the encoder print-out |
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| 116 | 4.3 Source code improvements |
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| 117 | - Unused functions are removed |
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| 118 | - Variable & function namings are changed to clarify its purpose |
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| 119 | |
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| 120 | 5. Known problems |
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| 121 | |
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| 122 | 5.1 POC coding |
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| 123 | - It's not implemented well. Currently, fixed 10-bit is used for POC coding. |
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| 124 | 5.2 ROT (rotational transform) |
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| 125 | - Inverse ROT code is not the best one on the aspects of the dynamic range although we already have better one. |
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| 126 | - It'll be replaced later with much simpler implementation. |
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